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引用次数: 0
摘要
近年来,利用铋基光催化剂降解微囊藻毒素- lr (MC-LR)具有良好的光催化性能,引起了人们的广泛关注。本文综述了铋基光催化剂降解MC-LR的表征和机理。铋基材料,特别是氧化铋和氧化铋在可见光照射下降解MC-LR表现出优异的光催化性能。讨论了各种合成方法,包括水热法、溶剂热法和模板辅助法,以调整铋基光催化剂的形态和性能,以增强MC-LR的降解。阐述了铋基光催化剂降解MC-LR的光催化机制,重点介绍了活性氧和电子空穴对在降解过程中的作用。此外,还讨论了影响铋基光催化剂光催化活性的因素,如晶体结构、比表面积和掺杂。本文还讨论了开发和应用铋基光催化剂降解MC-LR所面临的挑战和未来前景,强调需要进一步研究以优化其性能以实现实际环境修复应用。
Characterization of bismuth-based photocatalyst for microcystin-LR degradation and mechanism: a critical review.
The utilization of bismuth (Bi)-based photocatalysts for the degradation of microcystin-LR (MC-LR) has gained significant attention in recent years owing to their promising photocatalytic properties. This paper critically reviews the characterization and mechanisms of Bi-based photocatalysts for MC-LR degradation. Bi-based materials, particularly Bi oxyhalides and Bi oxides, have shown excellent photocatalytic performance in degrading MC-LR under visible-light irradiation. Various synthesis methods, including hydrothermal, solvothermal and template-assisted methods, have been discussed to tailor the morphology and properties of Bi-based photocatalysts for enhanced MC-LR degradation. The photocatalytic mechanisms involved in MC-LR degradation by Bi-based photocatalysts are elucidated, highlighting the roles of reactive oxygen species and electron-hole pairs in the degradation process. Additionally, the factors influencing the photocatalytic activity of Bi-based photocatalysts, such as crystal structure, surface area and doping, are discussed. Challenges and future prospects in developing and applying Bi-based photocatalysts for MC-LR degradation are also addressed, emphasizing the need for further research to optimize their performance for practical environmental remediation applications.
期刊介绍:
Royal Society Open Science is a new open journal publishing high-quality original research across the entire range of science on the basis of objective peer-review.
The journal covers the entire range of science and mathematics and will allow the Society to publish all the high-quality work it receives without the usual restrictions on scope, length or impact.